7th Sem, CIVIL

Structural Design and Drawing Civil 7th Sem Syllabus for BE 2017 Regulation Anna Univ

Structural Design and Drawing detail syllabus for Civil Engineering (Civil), 2017 regulation is taken from Anna University official website and presented for students of Anna University. The details of the course are: course code (CE8703), Category (PC), Contact Periods/week (5), Teaching hours/week (3), Practical Hours/week (0). The total course credits are 2.

For all other civil 7th sem syllabus for be 2017 regulation anna univ you can visit Civil 7th Sem syllabus for BE 2017 regulation Anna Univ Subjects. The detail syllabus for structural design and drawing is as follows.”

Course Objective:

  • This course aims at providing students with a solid background on the principles of structural engineering design. Students will be acquire the knowledge of liquid retaining structures, bridges components, retaining wall and industrial structures.

Unit I

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Unit II

Flat Slab and Bridges
Design of Flat Slabs with and without drops by Direct Design Method of IS code- Design and Drawing – IRC Specifications and Loading – RC Solid Slab Bridge – Steel Foot-over BridgeDesign and Drawing.

Unit III

Liquid Storage Structures
RCC Water Tanks – On ground, Elevated Circular, underground Rectangular Tanks-Hemispherical Bottomed Steel Water Tank –Design and Drawing

Unit IV

For complete syllabus and results, class timetable and more pls download iStudy. Its a light weight, easy to use, no images, no pdfs platform to make students life easier.

Unit V

Girders and Connections
Plate Girders – Behaviour of Components-Deign of Welded Plate Girder-Design of Industrial Gantry Girders – Design of Eccentric Shear and Moment Resisting connections.

Design and Drawing Exercises for Practical Component

Part a – Rcc Structures

  1. Rectangular Column and Footing
  2. Combined footing with Two columns
  3. RCC one way &Two way Slab and beam system
  4. Cantilever Retaining wall
  5. RCC T beam bridge deck
  6. Underground Rectangular Water Tank
  7. Elevated circular water Tank

Part B- Steel Structures

  1. Built up column, column base and Foundation
  2. Simple Steel Roof Trusses
  3. Industrial building Elements
  4. Plate Girder (welded)
  5. Framed Connections and Detailing
  6. Gantry girder
  7. Steel water Tank

Structural Design and Drawing Theory Examination Practicals

Question Paper Pattern Marks To Awarded Question Paper Pattern Marks To Awarded

This Paper Is a Theory Cum Practical Course Weightage for Theory 80% and for Practical 20% Five Either/Or Type Questions 5 X20 = 100 Marks : Covering All the Five Units Total Duration of Examination Will be 3 Hours Each Question Include Design – 12 Marks Free Hand Drawing (Not To Scale) – 8 Marks Theoretical Component Marks Will Carry 80% Weightage.

End Semester Examination Will be Conducted By Coe 2 Questions, One From Part a -Rcc Structures and One From Part B-Steel Structures Practical Component Marks Will Carry 20% Weightage.

Practical Examination Will be Conducted By the Respective Institution As Internal Mode.

Course Outcome:

At the end of the course the student will be able to

  • Design and draw reinforced concrete Cantilever and Counterfort Retaining Walls
  • Design and draw flat slab as per code provisions
  • Design and draw reinforced concrete and steel bridges
  • Design and draw reinforced concrete and steel water tanks
  • Design and detail the various steel trusses and cantry girders

Text Books:

  1. Krishnaraju N, Structural Design and Drawing, Universities Press, 2009.
  2. Punmia B.C,Ashok Kumar Jain and Arun KumarJain,Comprehensive Design of Steel Structures, Laxmi Publications Pvt. Ltd., 2003.

References:

  1. Krishnamurthy D,Structural Design and Drawing VolI,IIandIII,CBS Publishers, 2010.
  2. Shah V L and Veena Gore,Limit State Design of Steel Structures
  3. IS800-2007,Structures Publications, 2009.
  4. IS 456(2000) Indian Standard Plain and Reinforced Concrete-Code of Practice, Bureau of Indian Standards, New Delhi.
  5. SP34 Handbook on Concrete Reinforcement and Detailing, Bureau of Indian Standards, New Delhi.
  6. IS 800 (2007) Indian Standard General Construction In SteelCode of Practice, Bureau of Indian Standards, New Delhi.
  7. IS 875 Part 1 (2003) Code of Practice for Design Loads (Other Than Earthquake) for Buildings and Structures, Code of Practice-Dead Load, Bureau of Indian Standards, New Delhi.
  8. IS 875 Part 2 (2003) Code of Practice for Design Loads (Other Than Earthquake) for Buildings and Structures, Code of Practice-Imposed Load, Bureau of Indian Standards, New Delhi.
  9. IS 875 Part 3 (2003) Code of Practice for Design Loads (Other than Earthquake) for Buildings and Structures, Code of Practice-Wind Load, Bureau of Indian Standards, New Delhi.
  10. IS 3370 Part 1 (2009) Indian Standard Concrete Structures for Storage of Liquids-Code of Practice-General Requirements, Code of Practice, Bureau of Indian Standards, New Delhi.
  11. IS 3370 Part 2 (2009) Indian Standard Concrete Structures for Storage of Liquids-Code of Practice-Reinforced Concrete Structures, Code of Practice, Bureau of Indian Standards, New Delhi.
  12. IS 3370-Part 4 (2008) Indian Standard Code of Practice for Concrete Structures for The Storage of Liquids-Design Tables, Code of Practice, Bureau of Indian Standards, New Delhi.
  13. IS 804 (2008) Indian Standard Specification for Rectangular Pressed Steel Tanks, Code of Practice, Bureau of Indian Standards, New Delhi.
  14. IS 805 (2006) Indian Standard Code of Practice for Use of Steel in Gravity Water Tanks, Code of Practice, Bureau of Indian Standards, New Delhi.
  15. IRC 112-2011, Code of Practice for Concrete Road Bridges, The Indian Roads Congress, New Delhi.
  16. IRC 6-2014, Standard Specifications and Code of Practice for Road Bridges Section: II-Loads and Stresses, The Indian Roads Congress, New Delhi.

For detail syllabus of all other subjects of BE Civil, 2017 regulation do visit Civil 7th Sem syllabus for 2017 Regulation.

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